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Ningyi Zhou

Distinguished Professor

  • Tel: +86-21-34204135
  • Email: ningyi.zhou@sjtu.edu.cn

Education and Research Experience

  • Professor Ning-Yi Zhou received his Bachelor’s degree in Microbiology from Wuhan University and PhD in Microbiology from Imperial College London.
  • Following postdoctoral training at Imperial College and University of Wales, Bangor, Prof. Zhou established his own laboratory in Wuhan Institute of Virology of Chinese Academy of Sciences.
  • He then joined Shanghai Jiao Tong University as a distinguished professor.
  • Over the last two decades, his research has been focusing on the genetics and biochemistry of microbial aromatic catabolism in various bacteria as well as the bioaugmentation of contaminated soil with microbial degraders, publishing more than 80 papers in this field.
  • Currently, he serves an editor for “Applied and Environmental Microbiology”(https://journals.asm.org/journal/aem) (2016-2026). He was among the most cited Chinese researchers listed by Elsevier for 2014 to 2019 (Microbiology & Immunology Section). 

Selected Publications

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    Li T, Gao YZ, Xu J, Zhang ST, Guo Y, Spain JC, Zhou NY*. 2021. A recently assembled degradation pathway for 2,3-dichloronitrobenzene in Diaphorobacter sp.strain JS3051. mBio 12:e02231-21.
     

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    Yue WL , Yin CF, Sun L, Zhang J,  Xu Y, Zhou NY*. 2021. Biodegradation of bisphenol-A polycarbonate plastic by Pseudoxanthomonas sp. strain NyZ600. J. Hazard. Mater. 416:125775

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    Yin CF, Xu Y, Deng SK, Yue WL, Zhou NY*. 2021. A Novel Esterase, DacApva, from Comamonas sp. Strain NyZ500 with Deacetylation Activity for the Acetylated Polymer Polyvinyl Alcohol.  Appl. Environ. Microbiol. 87:e03016-20

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    Gao YZ, Palatucci ML, Waidner LA, Li T, Guo Y, Spain, JC*, Zhou NY*. 2021. A Nag-like dioxygenase initiates 3,4-dichloronitrobenzene degradation via 4,5-dichlorocatechol in Diaphorobacter sp. strain JS3050. Environ. Microbiol. 23(2) 1053-1065

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    Guo Y, Li DF, Ji HN, Zheng JT*, Zhou NY*. 2021. Hexachlorobenzene monooxygenase substrate selectivity and catalysis: structural and biochemical insights. Appl. Environ. Microbiol. 87: e01965-20. 

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    Liu WW, Pan J, Feng X, Li M, Xu Y, Wang F, Zhou NY*. 2020. Evidences of aromatic degradation dominantly via the phenylacetic acid pathway in marine benthic Thermoprofundales, Environ. Microbiol. 22(1): 329-342. 

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    Xu Y, Zhou NY*. 2020. MhpA is a hydroxylase catalyzing the initial reaction of 3-(3-hydroxyphenyl)propionate catabolism in Escherichia coli K-12. Appl. Environ. Microbiol. 86(4): e02385-19.  

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    Gao, YZ, Liu XY, Liu H, Guo Y, Zhou NY*. 2020. A Bph-Like Nitroarene Dioxygenase Catalyzes the Conversion of 3-Nitrotoluene to 3-Methylcatechol by Rhodococcus sp. Strain ZWL3NT. Appl. Environ. Microbiol. 86(4): e02517-19. 

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    Zhao H, Xu Y, Lin SJ, Spain JC, Zhou NY*, 2018. The molecular basis for the intramolecular migration (NIH shift) of the carboxyl group during para-hydroxybenzoate catabolism. Mol. Microbiol. 110:411-424

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    Gao YZ , Liu H, Chao HJ, and Zhou NY*, 2016. Constitutive expression of Nag-like dioxygenase gene through an internal promoter in the 2-chloronitrobenzene catabolic gene cluster of Pseudomonas stutzeri ZWLR2-1. Appl. Environ. Microbiol. 82:3461-3470.